Guyer C A, Morgan D G, Staros J V
J Bacteriol. 1986 Nov;168(2):775-9. doi: 10.1128/jb.168.2.775-779.1986.
The structural properties required for the binding of peptide substrates to the Escherichia coli periplasmic protein involved in oligopeptide transport were surveyed by measuring the ability of different peptides to compete for binding in an equilibrium dialysis assay with the tripeptide Ala-Phe-[3H]Gly. The protein specifically bound oligopeptides and failed to bind amino acids or dipeptides. Acetylation of the peptide amino terminus of (Ala)3 severely impaired binding, whereas esterification of the carboxyl terminus significantly reduced but did not completely eliminate binding. Peptides composed of L-amino acids competed more effectively than did peptides containing D-residues or glycine. Experiments with a series of alanyl peptide homologs demonstrated a decrease in competitive ability with increasing chain length beyond tripeptide. Competition studies with tripeptide homologs indicated that a wide variety of amino acyl side chains were tolerated by the periplasmic protein, but side-chain composition did affect binding. Fluorescence emission data suggested that this periplasmic protein possesses more than one substrate-binding site capable of distinguishing peptides on the basis of amino acyl side chains.
通过在平衡透析实验中测量不同肽与三肽丙氨酸-苯丙氨酸-[³H]甘氨酸竞争结合的能力,研究了参与寡肽转运的大肠杆菌周质蛋白与肽底物结合所需的结构特性。该蛋白特异性结合寡肽,而不结合氨基酸或二肽。(丙氨酸)₃的肽氨基末端乙酰化严重损害结合,而羧基末端酯化显著降低但未完全消除结合。由L-氨基酸组成的肽比含有D-残基或甘氨酸的肽竞争更有效。一系列丙氨酰肽同系物的实验表明,超过三肽后,随着链长增加,竞争能力下降。与三肽同系物的竞争研究表明,周质蛋白能耐受多种氨酰侧链,但侧链组成确实会影响结合。荧光发射数据表明,这种周质蛋白拥有不止一个底物结合位点,能够根据氨酰侧链区分肽。